The Quest for an Optimized Protocol for Whole-Heart Decellularization: A Comparison of Three Popular and a Novel Decellularization Technique and Their Diverse Effects on Crucial Extracellular Matrix Qualities

去细胞化 细胞外基质 生物医学工程 组织工程 弹性蛋白 脚手架 糖胺聚糖 基质(化学分析) 化学 层粘连蛋白 生物相容性 医学 病理 生物化学 色谱法 有机化学
作者
Payam Akhyari,Hug Aubin,Patricia Gwanmesia,Mareike Barth,Stefanie Hoffmann,Jörn Huelsmann,Karlheinz Preuß,Artur Lichtenberg
出处
期刊:Tissue Engineering Part C-methods [Mary Ann Liebert]
卷期号:17 (9): 915-926 被引量:151
标识
DOI:10.1089/ten.tec.2011.0210
摘要

Decellularized cardiac extracellular matrix (ECM) has been introduced as a template for cardiac tissue engineering, providing the advantages of a prevascularized scaffold that mimics native micro- and macroarchitecture to a degree difficult to achieve with synthetic materials. Nonetheless, the decellularization protocols used to create acellular myocardial scaffolds vary widely throughout the literature. In this study we performed a direct comparison of three previously described protocols while introducing and evaluating a novel, specifically developed fourth protocol, by decellularizing whole rat hearts through software-controlled automatic coronary perfusion. Although all protocols preserved the macroarchitecture of the hearts and all resulting scaffolds could successfully be reseeded with C2C12 myoblasts, assessing their biocompatibility for three-dimensional in vitro studies, we found striking differences concerning the microcomposition of the ECM scaffolds on a histological and biochemical level. While laminin could still be detected in all groups, other crucial ECM components, like elastin and collagen IV, were completely removed by at least one of the protocols. Further, only three protocols maintained a glycosaminoglycan content comparable to native tissue, whereas the remaining DNA content within the ECM varied highly throughout all four tested protocols. This study showed that the degree of acellularity and resulting ECM composition of decellularized myocardial scaffolds strongly differs depending on the decellularization protocol.
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